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Recycling of vat and reactive dyed textile waste to new colored man-made cellulose fibers

机译:增值税和活性染色纺织废物对新的人造纤维素纤维的回收

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The successful recycling of colored textile waste and reuse of respective dyes would represent a major milestone of global efforts to reduce the environmental impact of the textile industry. The chemical upcycling of dyed pre- and postconsumer cotton waste is promoted by studying the spinability and color fastness of seven vat and reactive dyes (i.e. Indanthren Blue BC 3%, Indanthren Red FBB coll, Indanthren Brilliant Green FBB coll, Levafix Brilliant Red E-4BA, Levafix Blue E-GRN gran, Remazol Brilliant Blue R spec, and Remazol Black B 133%) during dry-jet wet spinning. Apart from the fabrics dyed with Levafix Brilliant Red E-4BA, all samples dissolved in 1,5-diazabicyclo[4.3.0]non-5-ene actetate, a superbase based ionic liquid, and could be converted to new colored man-made cellulose fibers. It was found that there is a clear discrepancy between the recyclability of dyed pre- and postconsumer cotton waste, resulting in significantly higher fiber properties up to tenacities of 59.8 cN/tex and elongations of 13.1% in case of the latter. All recycled fibers displayed a noticeable color change in the CIELab space (Delta E = 8.8-25.6) throughout the spinning process. Despite these deviations, almost all fibers and demo fabrics produced thereof exhibited bright colors that can be reused in textile industry. Only Remazol Black B 133% did not sufficiently translate to the new textile product. The wash and rubbing fastness of the fabrics knitted from the regenerated fibers was superior to the dyed waste fabrics mainly because of the homogenous distribution of the dyes along the fiber cross-section.
机译:彩色纺织废物的成功回收和各种染料的重用将代表全球努力的主要里程碑,以减少纺织业的环境影响。通过研究七个增值税和反应性染料的旋转性和颜色牢度来促进染色的预染色和后视棉废物的化学性升高(即Indanthren Blue BC 3%,Aditanthren Red FBB Coll,Indanthren辉煌绿色FBB Coll,Levafix辉煌的红色E- 4BA,左脂肪蓝色E-GRN GRAN,雷达唑辉煌的蓝色R SPEC,以及干式湿法纺纱期间的雷达唑黑B 133%)。除了用Levafix亮红色E-4BA染色的织物外,溶解在1,5-diazabidclo [4.3.0]非5-eNE的所有样品,基于超级的离子液体,可以转化为新的人造纤维素纤维。结果发现,在后期棉花污染和后期棉花废物的可回收性之间存在明显的差异,导致纤维性能明显高达59.8 cn / tex的韧度和后者的伸长率为13.1%。在整个纺纱过程中,所有再循环纤维在CIELAB空间(Delta E = 8.8-25.6)中显示出明显的颜色变化。尽管存在这些偏差,但几乎所有产生的纤维和演示织物都表现出明亮的颜色,可以在纺织业中重复使用。只有雷达唑黑B 133%没有足够平移到新的纺织产品。从再生纤维编织的织物的洗涤和摩擦牢度主要是由于沿纤维横截面染料的均匀分布而优异的染色废料织物。

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